Ethical Imperatives Of Timely Access To Orphan Drugs: Is Possible To Reconcile Economic Incentives And Patients’ Health Needs?,
2017
University of Massachusetts Amherst
Ethical Imperatives Of Timely Access To Orphan Drugs: Is Possible To Reconcile Economic Incentives And Patients’ Health Needs?, Rosa Rodriguez-Monguio, T. Spargo, Enrique Seoane-Vazquez
Pharmacy Faculty Articles and Research
Background
More than 6,800 rare diseases and conditions have been identified in the US, which affect 25–30 million Americans. In 1983, the US Congress enacted the Orphan Drug Act (ODA) to encourage the development and marketing of drugs to treat rare diseases and conditions. This study analyzed all orphan designations and FDA approvals since 1983 through 2015, discussed the effectiveness of incentives for the development of treatments for rare diseases, and reflected on the ethical imperatives for timely access to orphan drugs.
Methods
Study data were derived from the Food and Drug Administration (FDA) Orange Book and the Office of …
Biophysical Approaches Facilitate Computational Drug Discovery For Atp-Binding Cassette Proteins,
2017
University of Toronto
Biophysical Approaches Facilitate Computational Drug Discovery For Atp-Binding Cassette Proteins, Steven V. Molinski, Zoltan Bozoky, Surtaj H. Iram, Saumel Ahmadi
Chemistry and Biochemistry Faculty Publications
Although membrane proteins represent most therapeutically relevant drug targets, the availability of atomic resolution structures for this class of proteins has been limited. Structural characterization has been hampered by the biophysical nature of these polytopic transporters, receptors, and channels, and recent innovations to in vitro techniques aim to mitigate these challenges. One such class of membrane proteins, the ATP-binding cassette (ABC) superfamily, are broadly expressed throughout the human body, required for normal physiology and disease-causing when mutated, yet lacks sufficient structural representation in the Protein Data Bank. However, recent improvements to biophysical techniques (e.g., cryo-electron microscopy) have allowed for previously …
Components In Aqueous Hibiscus Rosa-Sinensis Flower Extract Inhibit In Vitro Melanoma Cell Growth,
2017
Rowan University
Components In Aqueous Hibiscus Rosa-Sinensis Flower Extract Inhibit In Vitro Melanoma Cell Growth, Karina H. Goldberg, Ariel C. Yin, Archana Mupparapu, Edward P. Retzbach, Gary S. Goldberg, Catherine F. Yang
College of Science & Mathematics Departmental Research
Skin cancer is extremely common, and melanoma causes about 80% of skin cancer deaths. In fact, melanoma kills over 50 thousand people around the world each year, and these numbers are rising. Clearly, standard treatments are not effectively treating melanoma, and alternative therapies are needed to address this problem. Hibiscus tea has been noted to have medicinal properties, including anticancer effects. Extracts from Hibiscus have been shown to inhibit the growth of a variety of cancer cells. In particular, recent studies found that polyphenols extracted from Hibiscus sabdariffa by organic solvents can inhibit melanoma cell growth. However, effects of aqueous …
Engineered Peptides For Applications In Cancer-Targeted Drug Delivery And Tumor Detection,
2017
University of Alberta
Engineered Peptides For Applications In Cancer-Targeted Drug Delivery And Tumor Detection, R. Soudy, N. Byeon, Y. Raghuwanshi, S. Ahmed, A. Lavasanifar, Kamaljit Kaur
Pharmacy Faculty Articles and Research
Cancer-targeting peptides as ligands for targeted delivery of anticancer drugs or drug carriers have the potential to significantly enhance the selectivity and the therapeutic benefit of current chemotherapeutic agents. Identification of tumor-specific biomarkers like integrins, aminopeptidase N, and epidermal growth factor receptor as well as the popularity of phage display techniques along with synthetic combinatorial methods used for peptide design and structure optimization have fueled the advancement and application of peptide ligands for targeted drug delivery and tumor detection in cancer treatment, detection and guided therapy. Although considerable preclinical data have shown remarkable success in the use of tumor targeting …
Substituent Strength Vs Reactivity: A Study Of 1,3,4-Oxadiazoles And Electron Donating Groups,
2017
Otterbein University
Substituent Strength Vs Reactivity: A Study Of 1,3,4-Oxadiazoles And Electron Donating Groups, Katlynn Merringer
Undergraduate Honors Thesis Projects
This investigation focused on determining if there was a relationship between electron donating group substituent strength and resulting percent yield values of the 1,3,4-oxadiazole product. The data obtained from this investigation aimed to help chemists better understand the reactivity of the 1,3,4-oxadiazole because of its importance in the realm of drug design and development. In order to accomplish this, electron donating groups with varying pKa values were placed on the 1,3,4-oxadiazole and the resulting percent yields were analyzed for possible trends. The substituents used represented both resonance donating and inductively donating groups and were placed in both ortho and para …
Synthesis Of Oxadeazoles With Electron Withdrawing Groups And The Analysis Of Product Yield With Bond Length,
2017
Otterbein University
Synthesis Of Oxadeazoles With Electron Withdrawing Groups And The Analysis Of Product Yield With Bond Length, Elizabeth Ann Hall Peters
Undergraduate Honors Thesis Projects
2,5-disubstituted 1,3,4-oxadiazoles are a class of organic compound that are widely used and successful in pharmaceutical chemistry because they demonstrate strong biological activity. They are part of a larger class of compound called heterocycles, which make up most pharmaceutical drugs today. When synthesizing the compounds, higher yield means higher reactivity of the compound, and this is important for pharmaceuticals that need to have a strong biological activity. Per past studies, electron withdrawing groups on the compound allow higher, product yields. Along with electron withdrawing group addition, the bond length from electron withdrawing group and its corresponding carbon is analyzed to …
Structure-Activity Relationship Studies Of Bupropion And Related 3-Substituted Methcathinone Analogues At Monoamine Transporters,
2017
Virginia Commonwealth University
Structure-Activity Relationship Studies Of Bupropion And Related 3-Substituted Methcathinone Analogues At Monoamine Transporters, Abdelrahman R. Shalabi
Theses and Dissertations
The khat plant, catha edulis, has been abused for some time in the Middle East and the African horn for its short-term stimulant effects. However, it was not until 1975 when cathinone, β-ketoamphetamine, was identified as the major stimulant component of khat. Structural analogues of cathinone, synthetic cathinones, are new psychoactive substances available on the clandestine market of numerous countries including the USA. Abuse of these new illicit stimulants is a worldwide growing health concern which necessitates the investigation of the pharmacological properties of these new drugs of abuse. The abuse liabilities of these compounds seem to be related …
Demerol,
2017
Parkland College
Demerol, Christena G. Stephens
Natural Sciences Student Research Presentations
This is a poster presented at the Natural Sciences Poster Session at Parkland College, which provides the chemical makeup, dosage, and the body's response to Demerol (Meperidine Hydrochloride) a narcotic analgesic for the relief of acute pain and used in support of preoperative anesthesia.
Zyrtec,
2017
Parkland College
Zyrtec, Ebru Tasken
Natural Sciences Student Research Presentations
This is a poster presented at the Natural Sciences Poster Session at Parkland College, which provides the chemical makeup, dosage, and the body's response to Zyrtec (Cetirizine) an antihistimine, receptor antagonist used to treat seasonal or perennial allergic rhinitis and chronic idiopathic urticarial.
Emend,
2017
Parkland College
Emend, Melissa Kramer
Natural Sciences Student Research Presentations
This is a poster presented at the Natural Sciences Poster Session at Parkland College, which provides the chemical makeup, dosage, and the body's response to Emend (Aperpitant) , a selective substance receptor antagonist used in the prevention of acute and delayed nausea and vomiting associated with chemotherapy.
Naloxone Therapy In Opioid Overdose Patients: Intranasal Or Intravenous?,
2017
Parkland College
Naloxone Therapy In Opioid Overdose Patients: Intranasal Or Intravenous?, Leiah Carney
Natural Sciences Student Research Presentations
This slide presentation for the Natural Science Poster Session at Parkland College describes the chemical makeup and effect of Naloxone, an opioid antagonist used in the treatment opioid overdose and summarizes a study comparing intravenous and intranasal delivery methods. Concludes that although there are conflicting studies, evidence supports intranasal delivery.
Target Based Design And Synthesis Of Fused Pyrimidines In The Potential Treatment Of Cancer And Opportunistic Infection,
2017
Duquesne University
Target Based Design And Synthesis Of Fused Pyrimidines In The Potential Treatment Of Cancer And Opportunistic Infection, Khushbu Shah
Electronic Theses and Dissertations
This dissertation describes an introduction, background and research progress in the areas of agents designed as (a) selective Pneumocystis jirovecii dihydrofolate reductase (pjDHFR) inhibitors for pneumocystis pneumonia (PCP) infection; (b) inhibitors of microtubule polymerization and multiple receptor tyrosine kinase (RTK) for potential treatment of cancer; and (c) substrates for tumor-targeted therapy for cancer.
PCP is a host species-specific infection. Most of the drugs, synthesized and evaluated so far, have been tested against Pneumocystis carinii dihydrofolate reductase (the causative organism in rats), which would not necessarily be effective against pjDHFR (the causative organism in humans). Trimethoprim-sulfamethoxazole (TMP-SMX) combination, which has been …
Non-Steroidal Anti-Inflammatory Drugs: Is There A Link Between Cardiovascular And Renal Adverse Effects?,
2017
East Tennessee State University
Non-Steroidal Anti-Inflammatory Drugs: Is There A Link Between Cardiovascular And Renal Adverse Effects?, Regan E. Sevinsky, David W. Stewart, Sam Harirforoosh
Pharmacy Faculty Articles and Research
"Both the clinical benefits and the adverse effects of nonsteroidal anti-inflammatory drugs (NSAIDs) are mediated by the inhibition of cyclooxygenase (COX) 1 and 2.[1] COX-1 is expressed constitutively in tissues, whereas COX-2 is produced under periods of stress and inflammation. The physiologic function of COX-1 and COX-2 is to convert arachidonic acid to prostaglandins, thromboxane A2 (TXA2), and prostacyclins. These products influence multiple systems such as cardiac, immune, gastrointestinal (GI), renal, vascular, and pulmonary systems.[12] COX enzymes are present in various locations throughout the body including the blood vessels where they produce vasodilatory prostacyclins and TXA2, which causes platelet aggregation.[3] …
A Diversity-Oriented Synthesis Approach To Functionalized Azaheterocycles Using Cyclic Alpha-Halo Eneformamides,
2017
Central Washington University
A Diversity-Oriented Synthesis Approach To Functionalized Azaheterocycles Using Cyclic Alpha-Halo Eneformamides, Spencer A. Langevin
All Master's Theses
Functionalized piperidines, azepanes, azamacrocycles, morpholines, and thiomorpholines are common structural motifs found in a wide range of pharmaceuticals such as carmegliptine, levofloxacin, thioridazine, claviciptic acid, and azithomycin. As a result, there is a strong desire to construct highly functionalized nitrogen-bearing ring scaffolds in order to construct a wide range of drug possibilities. There are several non-modular and step-uneconomical synthetic methods used in the construction of these aforementioned motifs such as ring closing metathesis, ring expansions, and intramolecular reductive amination. In this research, we present a step-economical, cost-effective, scalable, and diversity-oriented synthesis approach to highly functionalized N-heterocycles through the intermediacy of …
Polyphenols Content And Antioxidant Activity Of Artemisia Sieversiana Willd. In Western Pamir,
2017
Institute of Botany, Plant Physiology and Genetics
Polyphenols Content And Antioxidant Activity Of Artemisia Sieversiana Willd. In Western Pamir, Gulazor Miravalova, Sh. Kurbonbekova, Sh. Satorov, Akobir Mirzorahimov, Dovudsho Navruzshoev, Vyacheslav Dushenkov, M. Vakhidova
Publications and Research
Polyphenols content and antioxidant activity in Artemisia sieversiana Willd. were investigated in relation to the altitude of the plant growth in the Western Pamir region. Antioxidant activity generally correlated with the polyphenols content. However, no significant association was found between an altitude of the sample collection and polyphenols content or antioxidant activity.
Study Of Molecular Interactions Of Glycosaminoglycans And Glycosaminoglycan Mimetics With Their Protein Targets,
2017
Virginia Commonwealth University
Study Of Molecular Interactions Of Glycosaminoglycans And Glycosaminoglycan Mimetics With Their Protein Targets, Daniel K. Afosah
Theses and Dissertations
Glycosaminoglycans (GAGs) are complex linear chain carbohydrate molecules found on virtually all animal cell surfaces. Owing to their negatively charged nature, GAGs interact with a number of different proteins. Thus, although they have great potential as therapeutic agents, their apparent promiscuous interactions increase their side effect risk. GAG mimetics, including GAG oligosaccharides and non-saccharide GAG mimetics (NSGMs) are viable approaches to address this. This work discusses sulfated benzofuran thrombin inhibitors with submaximal protease inhibition, sulfated diflavonoid inhibitors of plasmin and GAG oligosaccharides with selectivity for human neutrophil elastase (HNE).
Anticoagulants are very important for the treatment of thrombotic diseases. The …
Chemoselective And Stereoselective Exploration Of The Chemical Reactivity Space Of Castagnoli-Cushman-Derived Allylic Lactamoyl Esters: Application To The Synthesis Of Aza-Polycyclic Architectures,
2017
Central Washington University
Chemoselective And Stereoselective Exploration Of The Chemical Reactivity Space Of Castagnoli-Cushman-Derived Allylic Lactamoyl Esters: Application To The Synthesis Of Aza-Polycyclic Architectures, Brandon Joseph Mansker
All Master's Theses
The synthesis and evaluation of structure-activity relationships of saturated nitrogen heterocycles is the focal point of various pharmaceutical companies thanks to the high biological activity of previously isolated azacycles. Here, we describe an operationally simple and highly efficient approach to macrocyclic lactams bearing vicinal stereocenters and a challenging cycloalkyne motif. The outcomes are achieved through a novel [4 + 2] cycloaddition reaction between an N-iodoarylated-1,3-azadiene and cyclic anhydrides, followed by interception of the cycloadducts in cross-coupling manifolds (e.g., Sonogashira coupling) and concomitant lithiation-cyclization of the tethered alkyne. An unprecedented example of a hydroamino alkylation that is transition …
Preclinical Evaluation Of Ag10 For Therapeutic Use Against Familial Amyloid Cardiomyopathy And Its Application In Various Other Technologies,
2017
University of the Pacific
Preclinical Evaluation Of Ag10 For Therapeutic Use Against Familial Amyloid Cardiomyopathy And Its Application In Various Other Technologies, Mark Russell Miller
University of the Pacific Theses and Dissertations
Transthyretin (TTR) amyloidosis is a progressive, fatal disease in which deposition of amyloid derived from either mutant or wild-type TTR causes severe organ damage and dysfunction. TTR cardiomyopathy is an infiltrative, restrictive cardiomyopathy characterized by progressive left and right heart failure. Familial amyloid cardiomyopathy (FAC) is driven by pathogenic point mutations in the TTR gene that destabilize the TTR tetramer, prompting its dissociation into dimers and monomers, with subsequent misfolding, aggregation and deposition of toxic TTR amyloid aggregates in the myocardium. The most prevalent mutation that causes FAC is the V122I variant, carried by 3.4% of African Americans, that increases …
Design, Synthesis, And Biological Screening Of Selective Mu Opioid Receptor Ligands As Potential Treatments For Opioid Addiction,
2017
Virginia Commonwealth University
Design, Synthesis, And Biological Screening Of Selective Mu Opioid Receptor Ligands As Potential Treatments For Opioid Addiction, Samuel Obeng
Theses and Dissertations
Today, more Americans die each year because of drug overdoses than are killed in motor vehicle accidents. In fact, in 2015, more than 33,000 individuals died due to an overdose of heroin or prescription opioids. Sadly, 40-60 % of patients on current opioid addiction treatment medications relapse. Studies have shown that the addiction/abuse liability of opioids are abolished in mu opioid receptor (MOR) knock-out mice; this indicates that the addiction and abuse liability of opioids are mainly mediated through MOR. Utilizing the “message-address concept”, the our laboratory reported a novel non-peptide, reversible MOR selective ligand 17-cyclopropylmethyl-3,14β-dihydroxy-4,5α-epoxy-6α (isoquinoline-3-carboxamido)morphinan (NAQ). Molecular modeling …
Chemical Probes For Protein Α-N-Terminal Methylation,
2017
Virginia Commonwealth University
Chemical Probes For Protein Α-N-Terminal Methylation, Brianna D. Mackie
Theses and Dissertations
While protein α-N-terminal methylation has been known for nearly four decades since it was first uncovered on bacteria ribosomal proteins L33, the function of this modification is still not entirely understood. Recent discoveries have demonstrated α-N-terminal methylation is essential to stabilize the interactions between regulator of chromosome condensation 1 (RCC1) and chromatin during mitosis, to localize and enhance the interaction of centromere proteins (CENPs) with chromatin, and to facilitate the recruitment of DNA damage-binding protein 2 (DDB2) to DNA damage foci. Identification of N-terminal methyltransferase 1 (NTMT1) unveiled the eukaryotic methylation writer for protein α-N-termini. In addition, NTMT2 that shares …
